2020
DOI: 10.3390/condmat5040066
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Temperature-Independent Cuprate Pseudogap from Planar Oxygen NMR

Abstract: Planar oxygen nuclear magnetic resonance (NMR) relaxation and shift data from all cuprate superconductors available in the literature are analyzed. They reveal a temperature-independent pseudogap at the Fermi surface, which increases with decreasing doping in family-specific ways, i.e., for some materials, the pseudogap is substantial at optimal doping while for others it is nearly closed at optimal doping. The states above the pseudogap, or in its absence are similar for all cuprates and doping levels, and Fe… Show more

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Cited by 15 publications
(44 citation statements)
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“…The planar O data, at all doping levels, are in agreement with a single spin component from a metallic density of states with a temperature independent pseudogap at the Fermi surface. The experimentally determined orbital shifts and hyperfine coefficients are in accordance with first principles calculations [6,7,15,16]. Despite this convincing, simple picture, we should point out that there is scatter between different systems above as well as below T c , cf.…”
Section: Discussion Of Cu and O Shiftssupporting
confidence: 83%
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“…The planar O data, at all doping levels, are in agreement with a single spin component from a metallic density of states with a temperature independent pseudogap at the Fermi surface. The experimentally determined orbital shifts and hyperfine coefficients are in accordance with first principles calculations [6,7,15,16]. Despite this convincing, simple picture, we should point out that there is scatter between different systems above as well as below T c , cf.…”
Section: Discussion Of Cu and O Shiftssupporting
confidence: 83%
“…The pseudogap opens as doping decreases from high levels and can be measured with NMR. The density of states outside the gap or in its absence is universal to the cuprates, independent of doping and family [6]. This scenario is similar to what was concluded from specific heat data [8,9].…”
Section: Introductionsupporting
confidence: 86%
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“…The small upturn in S ( T ) near 400 K simply represents the limitations of the present differential technique at such a high temperature and is not seen in the data. We conclude that the pseudogap does not close at some postulated in the range 150–200 K but remains open to the highest temperature investigated—400 K. A similar conclusion has recently been drawn from planar oxygen NMR relaxation data for a number of cuprates 41 . We showed the same long ago 3 for the in-plane resistivity and similarly for the c -axis resistivity 4 , 42 .…”
Section: High-temperature Susceptibility and Entropysupporting
confidence: 78%